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Array type miniaturized ultrasonic sensors to detect urban sinkholes

机译:阵列式小型化超声传感器,用于检测城市污水孔

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We present an implementation of a compact sensor system based on an ultrasonic pulse-echo method to detect urban sinkholes in advance. Road depression is caused by damages of artificial structures buried underground such as drain pipes. Previous works on sinkhole detection have been performed variously based on electromagnetic, seismic and resistivity. However, there are technical difficulties such as obtaining a high-resolution image in shallow depth, and implementing a compact surveying device. The goal of this work is to fabricate a miniaturized sinkhole detection system based on low cost ultrasonic transducers with a resonant frequency of 40 kHz, and detect near-ground range. Motivated by biomedical ultrasonic imaging methods, we detected air layers below the asphalt using the pulse-echo method. To improve multi-channel image quality, a linear array system was implemented and images were acquired by classical synthetic aperture imaging for laboratory case study. Feasibility tests of the multi-channel sinkhole detector based on an ultrasonic transducer were successful. We present and analyze images obtained by demonstrating an asphalt model which is working under laboratory conditions and simulations Finite Element Analysis (FEA). (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们基于超声波脉冲回波方法介绍了一种紧凑的传感器系统,提前检测城市污水孔。道路凹陷是由人工结构的损坏造成的埋地,如排水管。以前的研磨池检测是根据电磁,地震和电阻率的各种方式进行的。然而,存在技术困难,例如在浅深度中获得高分辨率图像,并实现紧凑测量装置。这项工作的目的是制造基于低成本超声换能器的小型化污水孔检测系统,其谐振频率为40 kHz,并检测近地范围。通过生物医学超声成像方法激励,我们使用脉冲回波方法检测到沥青下方的空间层。为了提高多通道图像质量,实现了线性阵列系统,通过用于实验室案例研究的经典合成孔径成像来获取图像。基于超声换能器的多通道污水探测器的可行性测试成功。我们展示并分析通过演示在实验室条件下工作的沥青模型获得的图像和分析有限元分析(FEA)。 (c)2019年elestvier有限公司保留所有权利。

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